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Numerical Investigation of Dynamically Loaded Bolted Joints in Carbon Fibre Composite Structures

机译:碳纤维复合材料结构动态加载螺栓连接的数值研究

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摘要

This paper presents quasi-static and dynamic modelling of bolted composite structures using the explicit finite element code PAM-CRASH. User controlled point link (PLINK) elements were investigated for modelling the bolted composite joints used in the structures. Simulation results were compared with quasi-static and dynamic structural testing reported previously. Two loading configurations were considered. It was shown that the PLINK element modelling approach agreed well with the experimental results for both loading configurations and for one case offered significant improvements over other simplified bolt modelling methods. A stacked shell modelling approach was used to model the interlaminar delamination damage present in the ball-loaded impact mode. The overall response of the structure was significantly improved by the addition of these energy absorbing interfaces.
机译:本文提出了使用显式有限元代码PAM-CRASH的螺栓复合结构的准静态和动态建模。对用户控制的点链接(PLINK)元素进行了研究,以对结构中使用的螺栓复合节点进行建模。仿真结果与之前报道的准静态和动态结构测试进行了比较。考虑了两种加载配置。结果表明,对于两种载荷配置,PLINK元素建模方法都与实验结果非常吻合,并且在一种情况下,与其他简化的螺栓建模方法相比,它具有显着的改进。堆叠壳体建模方法用于对在球加载冲击模式下存在的层间分层损坏进行建模。通过添加这些能量吸收界面,可以显着改善结构的整体响应。

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